2 basic monitor panel (units without monitoring), Alarm present/silence, Figure 17 basic monitoring panel – Emerson Liebert FPC User Manual

Page 34: 3 power monitor panel, Figure 18 power monitor panel, Basic monitor panel (units without monitoring), Power monitor panel, Liebert fpc

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Operating Instructions

30

4.2

Basic Monitor Panel (Units Without Monitoring)

Alarm Present/Silence

Upon occurrence of a transformer overtemperature condition, the “Alarm Present/Silence” switch will

become illuminated and the audible alarm will be activated. Pushing the “Alarm Present/Silence”

switch will silence the audible alarm. The cause of the overtemperature condition should be investi-

gated and corrected. Possible causes include transformer overload, excessive non-linear loading, inade-

quate ventilation, high or low input voltage, or monitoring malfunction. Failure to correct the

overtemperature condition may result in an automatic system shutdown due to the second stage of

overtemperature sensing. After correction of the alarm condition, the alarm will automatically reset.

Figure 17 Basic monitoring panel

4.3

Power Monitor Panel

Monitored Parameters - A 4 x 20 character LCD is provided to indicate the input voltages (line-to-

line), output voltages (line-to-line and line-to-neutral), output currents (each phase, neutral and

ground), output voltage THD, output current THD, crest factor, K-factor, output kVA, kW, kWH,

power factor, percent load and output frequency. Pressing the Scan switch will activate the

“Autoscan” mode where all monitored parameters are sequentially displayed automatically. Momen-

tarily pressing the “Hold/Sequence” switch interrupts the “Autoscan” mode. Pressing the “Hold/

Sequence” switch allows manual selection of the sequentially displayed parameters.

Figure 18 Power monitor panel

Liebert FPC

EMERGENCY
POWER
OFF

FPC16000

ALARM
PRESENT
SILENCE

Liebert FPC

EMERGENCY
POWER
OFF

FPC16001

ALARM
PRESENT
SILENCE

OUTPUT VOLTAGE

X – N = 120

Y – N = 120

Z – N = 120

X – Y = 208

Y – Z = 208

Z – X = 208

SCAN

HOLD

SEQUENCE

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